• Title/Summary/Keyword: Horticultural greenhouse

검색결과 390건 처리시간 0.034초

아치형 경질판 온실 설계도 개발 (Design for the arch-type plastic panel greenhouse)

  • 김현환;이시영;전희;남윤일;권영삼
    • 한국생물환경조절학회:학술대회논문집
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    • 한국생물환경조절학회 1998년도 정기총회 및 학술논문 발표요지
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    • pp.178-183
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    • 1998
  • 우리나라 원예시설은 환경이 열악한 비닐하우스에서 정부의 원예시설에 대한 지원사업으로 자동화 비닐하우스가 설계되면서 농촌의 풍경을 바꾸어 놓게 되었다. '91년 이후 정부의 지원사업에 힘입어 '96년에 유리온실 면적이 250㏊, 자동화비닐하우스가 3,515㏊로 비약적인 발전을 이루었으나 경질판온실은 60㏊로 유리온실이나 자동화 비닐하우스에 비해 상대적으로 보급면적이 떨어지고 있는 실정이다. (중략)

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웹 기반의 온실 원격 제어 시스템의 개발 (Development of Web-based Control System for Greenhouse Teleoperation)

  • 허원석;심주현;이석규;김규원;조명환;김회태
    • Journal of Biosystems Engineering
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    • 제27권4호
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    • pp.349-354
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    • 2002
  • In this study, we proposed a web-based teleoperation system to enhance the productivity and flexibility of the greenhouse since basically, internet-based teleoperation enables cheap, expandable system to be implemented. Platform independent language, Java-based control system can overcome the platform dependency which most of conventional control systems have. One of the merits of the proposed system is the flexibility of the data based system from which some valuable analysis can be implemented on-line. Some basic experiments show the stability and field applicability of the proposed remote control system.

Bacteriophage Usage for Bacterial Disease Management and Diagnosis in Plants

  • Vu, Nguyen Trung;Oh, Chang-Sik
    • The Plant Pathology Journal
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    • 제36권3호
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    • pp.204-217
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    • 2020
  • In nature, plants are always under the threat of pests and diseases. Pathogenic bacteria are one of the major pathogen types to cause diseases in diverse plants, resulting in negative effects on plant growth and crop yield. Chemical bactericides and antibiotics have been used as major approaches for controlling bacterial plant diseases in the field or greenhouse. However, the appearance of resistant bacteria to common antibiotics and bactericides as well as their potential negative effects on environment and human health demands bacteriologists to develop alternative control agents. Bacteriophages, the viruses that can infect and kill only target bacteria very specifically, have been demonstrated as potential agents, which may have no negative effects on environment and human health. Many bacteriophages have been isolated against diverse plant-pathogenic bacteria, and many studies have shown to efficiently manage the disease development in both controlled and open conditions such as greenhouse and field. Moreover, the specificity of bacteriophages to certain bacterial species has been applied to develop detection tools for the diagnosis of plant-pathogenic bacteria. In this paper, we summarize the promising results from greenhouse or field experiments with bacteriophages to manage diseases caused by plant-pathogenic bacteria. In addition, we summarize the usage of bacteriophages for the specific detection of plant-pathogenic bacteria.

간척지 광환경 특성 분석 및 3-D 모델을 통한 온실 내 공간적 광분포 예측 (Analysis of Light Environments in Reclaimed Land and Estimation of Spatial Light Distributions in Greenhouse by 3-D Model)

  • 이준우;신종화;김지훈;박현우;유인호;손정익
    • 생물환경조절학회지
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    • 제23권4호
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    • pp.303-308
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    • 2014
  • 수출용 온실 단지로 기대되는 간척지의 광환경은 해무 등에 의해 내륙과는 다른 광환경 특성을 나타낸다. 이러한 간척지에서 온실 설계 기준을 작성하기 위해서 산란광과 직달광을 고려한 온실 내 광분포 연구가 필요하다. 본 연구에서는 간척지의 고유의 광환경 특성을 분석하고 3-D 온실 모델에 적용하여 간척지의 온실 내 공간적인 광분포를 추정하고자 하였다. 먼저 간척지의 일사량을 산란광과 직달광으로 구분하여 측정하고 내륙의 일사량과 비교하였다. 또한 간척지 지역에 설치된 온실 내의 광분포를 측정하고 이를 시뮬레이션을 통해 계산된 값과 비교함으로써 3-D 온실 모델에 대한 검증을 실시하였다. 간척지는 내륙에 비하여 전체 일사량에 대비 높은 산란광의 비율을 나타내었으며, 특히 일출 및 일몰 부근에서 크게 나타났다. 3-D 온실 모델에 의한 온실 내 예측 광분포는 실제 간척지의 온실 내 광분포와 유사하게 나타났다. 검증된 3-D 온실 모델을 통하여 임의의 외부 광조건에 대하여 간척지 지역의 온실 내부의 시간적인 평균 광도의 변화와 광분포를 예측할 수 있었다. 이러한 결과는 간척지 지역의 온실 내 광환경 해석 이외에도 작물의 수광량 해석에도 유용하게 활용될 것으로 예상된다.

양송이 재배사 공기 중에 존재하는 세균조사 (Investigation of bacteria in indoor air of a greenhouse for button mushroom cultivation)

  • 권혁우;최민아;오연이;공원식;김성환
    • 한국버섯학회지
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    • 제13권1호
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    • pp.26-29
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    • 2015
  • 양송이는 재배사라는 밀폐된 환경에서 재배되는 바 양질의 생산을 위해서는 재배사 내 환경에 대한 정보가 요구된다. 본 연구는 양송이 재배사내 실내환경에 대한 기초 정보를 얻고자 수행되었다. 재배사 내 온도와 습도는 $19.75{\pm}0.35^{\circ}C$, $87{\pm}3.67%$로 세균이 서식할 수 있는 환경조건이었으며, 부유세균의 농도는 $3.84{\times}10^3cfu/m^3$로서 환경부에서 고시한 실내공기질 오염유지 기준치인 $8.0{\times}10^2cfu/m^3$을 초과하는 수치였다. 분리된 부유세균은 Advenella kashmirensis, Bacillus vietnamensism, B. licheniformis, Burkholderia sordidicola, Fictibacillus phosphorivorans, Lysobacter daejeonensis, Microbacterium esteraromaticum, Pseudomonas aeruginosa, P. protegens, P. gessardii, P. mosseli 등 7속 11종으로 동정되었다.

시설원예 습도환경 제어를 위한 냉각식 제습기 개발 (Development of a Refrigeratory-Based Dehumidifier for Humidity Environment Control in Greenhouse)

  • 강금춘;연광석;유영선;김영중;강연구;백이
    • Journal of Biosystems Engineering
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    • 제32권4호
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    • pp.247-255
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    • 2007
  • During the winter season in Korea, the relative humidity of greenhouse at night often exceeds 90% because air temperature inside the greenhouse is usually controlled using a heater with all of windows closed to minimize heat loss, thereby requiring the use of a dehumidifier that can maintain optimum humidity levels of $70{\sim}80%$ to provide a good growth condition of crops. Also, such a high humid condition can cause the development of a pest, such as insects, fungi or diseases. However, the use of most conventional dehumidifiers for low temperature dehumidification is limited because their performance is degraded due to frost accumulation on the evaporator coil. This study was carried out to develop a refrigeratory-based dehumidifier suitable for low temperature dehumidification in greenhouse cultivation. The developed dehumidifier consists of a condenser and an evaporator installed separately so that relative and absolute humidity levels can be reduced when air passed through the condenser and evaporator, respectively. The prototype dehumidifier showed a dehumidification capacity of $5{\sim}7kg/h$ when air with a temperature of $15{\sim}25^{\circ}C$ and a relative humidity of $70{\sim}95%$ came into the dehumidifier. Under the condition that either temperature or relative humidity was fixed, the amount of condensed water was proportional to the levels of both temperature and relative humidity.

Growth and Yield of Tomato and Cucumber Plants in Polycarbonate or Glass Greenhouses

  • Kwon, Joon Kook;Khoshimkhujaev, Bekhzod;Lee, Jae Han;Yu, In Ho;Park, Kyoung Sub;Choi, Hyo Gil
    • 원예과학기술지
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    • 제35권1호
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    • pp.79-87
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    • 2017
  • We examined the effect of two greenhouse covering materials (glass or solid polycarbonate sheets) on the light environment and growth of tomato and cucumber plants. Spectral analysis showed that polycarbonate sheets entirely blocked radiation in both the UV - B (300 - 320 nm) and UV - A (320 - 400 nm) ranges, whereas glass transmitted UV - A and was only opaque to UV - B. The transmittance of photosynthetically active radiation (400 - 700 nm) and near infrared radiation (700 - 1100 nm) was higher in polycarbonate than glass. Air and soil temperatures were not significantly different between greenhouses covered with either material. The growth of cucumber plants was slightly affected by covering materials, whereas no significant changes in growth parameters were observed for tomato plants. The color parameters of tomato fruits were affected by the cover material, whereas cucumber fruits showed similar coloration in both glass and polycarbonate greenhouses.

곤봉가루응애(Tyrophagus similis)에 의한 시설재배 시금치 피해 (Damages by Tyrophagus similis (Acari: Acaridae) in Greenhouse Spinach in Korea)

  • 정재아;조명래;김형환;강택준;이종호;도경란
    • 한국응용곤충학회지
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    • 제49권4호
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    • pp.429-432
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    • 2010
  • 친환경 시설재배 시금치에서 생장점 부위를 가해하는 응애를 채집하여 곤봉가루응해(Tyrophagus similis Volgin, 1949)로 동정되었다 곤봉가루응애에 의한 시금치의 피해는 주로 생장점부근의 어린잎에서 나타나는데 곤봉가루응애의 크기가 0.5 nm 정도로 매우 작아 농민들이 육안으로 해충을 확인하기는 매우 어렵다. 본 연구에서는 우리나라에서 처음으로 확인된 곤봉가루응애에 의한 시금치 피해에 대해 보고하고 응애의 형태 및 피해증상에 대한 정보를 제공하고자 한다.

Fruit Set and Fruit Characteristics of Highbush Blueberries (Vaccinium corymbosum cvs. Bluecrop, Coville, and Northland) in an Open Field and a Rain Shelter

  • Kim, Su Jin;Kim, Jin Gook;Ryou, Myung Sang;Park, Kyo-Sun;Kim, Hong-Lim
    • 한국자원식물학회지
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    • 제27권6호
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    • pp.701-706
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    • 2014
  • Three highbush blueberries (Vaccinium corymbosum cvs. Bluecrop, Coville, and Northland) grown in an open field and in a rain shelter were compared to evaluate the potential benefits of rain-sheltering systems on growth and fruit quality. Shrubs grown in rain shelter flowered 5-14 days earlier and were in full bloom earlier than those in the open field. All three cultivars set fruit by nearly 90% of flowers when they were grown in the open field, but was markedly reduced when they were grown in the rain shelter, to approximately 50% for 'Bluecrop' and 'Coville'. Fruit sets ratio of 'Northland' grown in the in the rain shelter was 14.5. Fruit from greenhouse-grown 'Northland' were larger, heavier, and had more seeds per berry. Soluble sugar content (SSC) of fruits varied both with the cultivars and growing conditions. SSC of fruits grown in the greenhouse was higher in 'Bluecrop' compared to that grown in the field, but this pattern was reversed in 'Northland'. Titratable acid was significantly higher in fruits from rain shelter-grown shrubs of both 'Bluecrop' and 'Northland' than in fruits from open field-grown shrubs (P < 0.05), although there was no difference in TA with respect to growing conditions for 'Coville'. The number of seed per fruit, fruit length and diameter, weight, SSC, and TA were similar in 'Coville' shrubs grown in the open field and the rain shelter. Fruit firmness of 'Bluecrop', 'Coville', and 'Northland' was higher in the rain shelter than in the open field. 'Coville' and 'Northland' fruits harvested in the open field had higher blue chroma than those harvested in the rain shelter. However, this pattern was reversed for 'Bluecrop'. On the whole, sheltering from rain affected most fruit characteristics of the three cultivars differently. Therefore, suitable blueberry cultivars for the rain shelter should be chosen by purpose.